Title: Metabolism of purines and pyrimidines - exercise -
1Metabolism of purines and pyrimidines- exercise -
2Purine nucleotides
- include an aromatic cycle in the structure
- can contain either adenine or thymine
- include N-glycosidic bond
- are composed of a nucleoside bound to phosphoric
acid by an anhydride bond
3Purine nucleotides
- include an aromatic cycle in the structure
- can contain either adenine or thymine
- include N-glycosidic bond
- are composed of a nucleoside bound to phosphoric
acid by an anhydride bond
4PURINE BASES
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
5 ribonucleoside deoxyribonucleoside
N-glycosidic bond
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
6 ribonucleotide deoxyribonucleotide
ester bond
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
7Pyrimidine nucleotides
- include an imidazol ring in the structure
- include thymidine- and cytidine monophosphate
- contain an ester bond
- can include 3 phosphate groups in their structure
8Pyrimidine nucleotides
- include an imidazol ring in the structure
- include thymidine- and cytidine monophosphate
- contain an ester bond
- can include 3 phosphate groups in their structure
9PYRIMIDINE BASES
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
10 ribonucleosides deoxyribonucleoside
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
11Ribonucleotides N-glycosidic bond ester
bond anhydride bond
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
12Purine and pyrimidine nucleotides can be used
- as nucleoside triphosphates for nucleic acid
synthesis - in energetic metabolism of cells
- for activation of metabolic intermediates of
saccharides and lipids - in enzymatic reactions some coenzymes are
nucleotides
13Purine and pyrimidine nucleotides can be used
- as nucleoside triphosphates for nucleic acid
synthesis - in energetic metabolism of cells
- for activation of metabolic intermediates of
saccharides and lipids - in enzymatic reactions some coenzymes are
nucleotides
14Synthesis of nucleotides
- uses products of pentose cycle
- includes phosphoribosyl diphosphate (PRDP PRPP)
as a substrate - needs derivatives of folic acid
- proceeds in a cytoplasm only
15Synthesis of nucleotides
- uses products of pentose cycle
- includes phosphoribosyl diphosphate (PRDP PRPP)
as a substrate - needs derivatives of folic acid H4 folate (THF)
- proceeds in a cytoplasm only
16PRPP PRDP
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
17Synthesis of purine nucleotides
- uses ammonia as a nitrogen donor
- proceeds in a cytoplasm
- can start from nucleosides produced by
degradation of nucleic acids - includes uric acid as an intermediate
18Synthesis of purine nucleotides
- uses ammonia as a nitrogen donor
- proceeds in a cytoplasm
- can start from nucleosides produced by
degradation of nucleic acids - includes uric acid as an intermediateuric acid
is the end product of purine ring degradation
19Synthesis of purine nucleotides
CYTOPLASM
Obrázek prevzat z http//web.indstate.edu/thcme/mw
king/nucleotide-metabolism.html (leden 2007)
20IMP
AMP
GMP
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
21Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
22Synthesis of pyrimidine nucleotides
- starts by the reaction PRDP glutamine
- proceeds only in a cytoplasm of cells
- includes orotic acid as an intermediate
- includes inosine monophosphate as an intermediate
23Synthesis of pyrimidine nucleotides
- starts by the reaction PRDP glutamine
- proceeds only in a cytoplasm of cells
- includes orotic acid as an intermediate
- includes inosine monophosphate as an intermediate
24Synthesis of pyrimidine nucleotides
CYTOPLASM
mitochondrion
Obrázek prevzat z http//web.indstate.edu/thcme/mw
king/nucleotide-metabolism.html (leden 2007)
25Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
26Synthesis of 2-deoxyribonucleotides
enzyme ribonucleotide reductase
small protein thioredoxin
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
27Synthesis of thymidine monophosphate
Obrázek je prevzat z ucebnice Devlin, T. M.
(editor) Textbook of Biochemistry with Clinical
Correlations, 4th ed. Wiley-Liss, Inc., New York,
1997. ISBN 0-471-15451-2
28In a regulation of nucleotide synthesis
participate
- 5-phosphoribosyl-1-diphosphate (PRDP)
- feed back inhibition
- enzyme carbamoyl phosphate synthetase
II(synthesis of pyrimidines) - enzyme xanthine oxidase(synthesis of purines)
29In a regulation of nucleotide synthesis
participate
- 5-phosphoribosyl-1-diphosphate (PRDP)
- feed back inhibition
- enzyme carbamoyl phosphate synthetase
II(synthesis of pyrimidines) - enzyme xanthine oxidase(synthesis of purines)
enzyme of purine degradation
30Regulation of nucleotide synthesis
regulatory enzyme activation inhibition
glutamine-PRPP amidotransferase (purines) PRPP IMP, GMP, AMP (allosteric inhibition)
carbamoylphosphatesynthetase II cytosolic (pyrimidines) PRPP ATP UTP
31In a degradation of purine nucleotides
- ammonia is released
- CO2 is produced
- the enzyme xanthine oxidase participates
- uric acid is produced as the end product
32In a degradation of purine nucleotides
- ammonia is released
- CO2 is produced
- the enzyme xanthine oxidase participates
- uric acid is produced as the end product
33Degradation of purines
uric acid
34In a degradation of pyrimidine nucleotides
- ?-amino acids are produced
- the enzyme xanthine oxidase participates
- orotic acid is formed
- ammonia is produced
35In a degradation of pyrimidine nucleotides
- ?-amino acids are produced
- the enzyme xanthine oxidase participates
- orotic acid is formed
- ammonia is produced
36Degradation of pyrimidines
37Principal differences between metabolism of
purines and pyrimidines
purines pyrimidines
formation of N-glycosidic bond in 1st step of their biosynthesis (PRDP is the 1st substrate) a heterocyclic ring is formed first, then it reacts with PRDP
location of biosynthesis cytoplasm cytoplasm 1 enzymeis in a mitochondrion
products of degradation uric acid (poor solubility in H2O), NH3 CO2, NH3, ?-AMK (soluble in H2O)